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Molybdenum-rhenium alloy based high-Q superconducting microwave resonators

机译:钼r合金基高Q超导微波谐振器

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Superconducting microwave resonators (SMRs) with high quality factors have become an important technology in a wide range of applications. Molybdenum-Rhenium (MoRe) is a disordered superconducting alloy with a noble surface chemistry and a relatively high transition temperature. These properties make it attractive for SMR applications, but characterization of MoRe SMR has not yet been reported. Here, we present the fabrication and characterization of SMR fabricated with a MoRe 60–40 alloy. At low drive powers, we observe internal quality-factors as high as 700 000. Temperature and power dependence of the internal quality-factors suggest the presence of the two level systems from the dielectric substrate dominating the internal loss at low temperatures. We further test the compatibility of these resonators with high temperature processes, such as for carbon nanotube chemical vapor deposition growth, and their performance in the magnetic field, an important characterization for hybrid systems.
机译:具有高品质因数的超导微波谐振器(SMR)已成为广泛应用中的一项重要技术。钼-(MoRe)是一种无序的超导合金,具有高贵的表面化学性质和较高的转变温度。这些特性使其对SMR应用具有吸引力,但尚未报道MoRe SMR的特性。在这里,我们介绍了用MoRe 60-40合金制造的SMR的制造和特性。在低驱动功率下,我们观察到内部品质因数高达700 000,内部品质因数的温度和功率相关性表明,介电基片中存在两级系统,这在低温下是内部损耗的主要来源。我们进一步测试了这些谐振器与高温工艺的兼容性,例如碳纳米管化学气相沉积生长的兼容性,以及它们在磁场中的性能,这是混合系统的重要特征。

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